Efficient replication of influenza D virus in the human airway underscores zoonotic potential

C Christina G. Sanders (Department of Veterinary Biosciences, The Ohio State University) M Min Liu J Jovanna A. Fusco (Department of Veterinary Biosciences, The Ohio State University) E Elizabeth M. Ohl (Department of Veterinary Biosciences, The Ohio State University) N Natalie N. Tarbuck (Department of Veterinary Preventive Medicine, The Ohio State University) E Emily M. King (Department of Veterinary Biosciences, The Ohio State University) D Devra Huey (Department of Veterinary Biosciences, The Ohio State University) T Thomas P. Fabrizio (Department of Host-Microbe Interactions, St. Jude Children’s Research Hospital) P Phylip Chen (Center for Microbe and Immunity Research, The Abigail Wexner Research Institute at Nationwide Children’s Hospital) A Amanda R. Panfil (Department of Veterinary Biosciences, The Ohio State University) R Richard J. Webby M Mark E. Peeples (Center for Microbe and Immunity Research, The Abigail Wexner Research Institute at Nationwide Children’s Hospital) A Andrew S. Bowman C Cody J. Warren (Department of Veterinary Biosciences, The Ohio State University)

Abstract

Influenza D virus (IDV), primarily found in livestock species, has demonstrated cross-species transmission potential, yet its threat to humans remains poorly understood. Here, we curated a panel of IDV isolates collected during field surveillance from 2011 to 2020 from swine and cattle to assess their ability to infect human airway cells as a proxy for zoonotic threat assessment. Using lung epithelial cell lines, primary well-differentiated airway epithelial cultures, and precision-cut lung slices, we demonstrated that IDV efficiently propagates in cells and tissues from the human respiratory tract, reaching titers comparable to human influenza A virus (IAV). Infection kinetics in primary porcine airway cultures and respiratory tissues mirrored those from humans, suggesting similar infectivity across species. To define host responses to IDV infection, we evaluated innate immune sensing and downstream interferon signaling in human respiratory cells. IDV infection resulted in markedly reduced activation of interferon regulatory factor signaling and diminished induction of interferon lambda 1 and interferon-stimulated genes compared to IAV, indicating inefficient activation of innate immune sensing pathways. However, IDV replication was potently restricted in interferon-pretreated cells, demonstrating sensitivity to interferon-mediated antiviral effector mechanisms once an antiviral state was established. Together, these findings show that IDV can efficiently infect the human airway while limiting innate immune sensing, a feature that may facilitate zoonotic spillover. Our study highlights the need for enhanced surveillance of IDV at the animal–human interface and provides a foundation for further investigation into its biology and potential for causing human infection and disease.

Article Details

Volume / Issue Vol. 123, Issue 17
Published April 28, 2026
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (14)

C

Christina G. Sanders

Department of Veterinary Biosciences, The Ohio State University

M

Min Liu

J

Jovanna A. Fusco

Department of Veterinary Biosciences, The Ohio State University

E

Elizabeth M. Ohl

Department of Veterinary Biosciences, The Ohio State University

N

Natalie N. Tarbuck

Department of Veterinary Preventive Medicine, The Ohio State University

E

Emily M. King

Department of Veterinary Biosciences, The Ohio State University

D

Devra Huey

Department of Veterinary Biosciences, The Ohio State University

T

Thomas P. Fabrizio

Department of Host-Microbe Interactions, St. Jude Children’s Research Hospital

P

Phylip Chen

Center for Microbe and Immunity Research, The Abigail Wexner Research Institute at Nationwide Children’s Hospital

A

Amanda R. Panfil

Department of Veterinary Biosciences, The Ohio State University

R

Richard J. Webby

M

Mark E. Peeples

Center for Microbe and Immunity Research, The Abigail Wexner Research Institute at Nationwide Children’s Hospital

A

Andrew S. Bowman

C

Cody J. Warren

Department of Veterinary Biosciences, The Ohio State University